Synthesis and catalytic hydrogenation activity of Pd and bimetallic Au–Pd nanoparticles supported on high-porosity carbon materials

被引:0
作者
Oleg V. Belousov
Valery E. Tarabanko
Roman V. Borisov
Irina L. Simakova
Anatoly M. Zhyzhaev
Nikolay Tarabanko
Victoria G. Isakova
Vladimir V. Parfenov
Ilya V. Ponomarenko
机构
[1] Institute of Chemistry and Chemical Technology of the Siberian Branch of the Russian Academy of Sciences - A Separate Division of FSC KSC SB RAS,
[2] Boreskov Institute of Catalysis,undefined
[3] Kirensky Institute of Physics of the Siberian Branch of the Russian Academy of Sciences - A Separate Division of FSC KSC SB RAS,undefined
来源
Reaction Kinetics, Mechanisms and Catalysis | 2019年 / 127卷
关键词
MOCVD; Hydrothermal synthesis; Palladium nanoparticles; Mesostructured carbon; Bimetallic Pd–Au catalyst; Furfural diethyl acetal; Hydrogenation;
D O I
暂无
中图分类号
学科分类号
摘要
The processes of palladium deposition on various high-porosity carbon matrices (Sibunit, CMK-3) have been studied. Mesostructured carbon material CMK-3 was synthesized using a silicate template of SBA-15 type. Pd nanoparticles were loaded onto carbon matrices by metalorganic chemical vapour deposition (MOCVD) method using palladium(II) acetylacetonate precursor. Bimetal Au–Pd systems were synthesized by autoclave reduction of gold(III) chloride complexes on Pd-containing carbon matrices. Structure of the obtained composite particles was studied by electron microscopy and X-ray diffraction. The average diameter of Pd particles on Sibunit is about 10, and 5–6 nm on CMK-3. The catalytic activity of the synthesized materials was studied in the reaction of furfural diethyl acetal (FDEA) hydrogenation, using gas–liquid chromatographic analysis. There is significant difference in catalytic activity of MOCVD-Pd/C compared to conventional impregnated Pd/C systems: the hydrogenation rate is 3–6 times higher with MOCVD-derived catalysts. Introducing Au into a MOCVD-Pd/C catalyst increases the hydrogenation rate threefold. Considerable difference in the composition of hydrogenation products was observed between these differently prepared catalysts.
引用
收藏
页码:25 / 39
页数:14
相关论文
共 260 条
[1]  
Ferrando R(2008)Nanoalloys: from theory to applications of alloy clusters and nanoparticles Chem Rev 108 845-910
[2]  
Jellinek J(2011)Noble metal nanoparticles/carbon nanotubes nanohybrids: synthesis and applications NanoToday 6 75-90
[3]  
Johnston RL(2014)Pd–Au/C catalysts with different alloying degrees for ethanol oxidation in alkaline media Electrochim Acta 144 50-55
[4]  
Wu B(2014)Catalysis using colloidal-supported gold-based nanoparticles Appl Petrochem 4 85-94
[5]  
Kuang Y(2013)Deactivation in continuous deoxygenation of C18-fatty feedstock over Pd/Sibunit Top Catal 56 714-724
[6]  
Zhang X(2002)Pd–Au/sibunit carbon catalysts: characterization and catalytic activity in hydrodechlorination of dichlorodifluoromethane (CFC-12) J Catal 209 528-538
[7]  
Chen J(2015)Comparative EXAFS and TEM study of Pd/Sibunit and Pd–Ga/Sibunit catalysts for liquid-phase acetylene hydrogenation Bull Russ Acad Sci 79 1186-1190
[8]  
Qin YH(2012)Au–Pd nanoparticles confined in tubular mesoporous carbon as highly selective and reusable benzyl alcohol oxidation catalysts ChemCatChem 4 1595-1602
[9]  
Li Y(2014)Pd embedded in porous carbon (Pd@CMK-3) as an active catalyst for Suzuki reactions: accelerating mass transfer to enhance the reaction rate NanoResearch 7 1254-1262
[10]  
Lv RL(2012)Structure sensitivity of selective acetylene hydrogenation over the catalysts with shape-controlled palladium nanoparticles Kinet Catal 53 253-261